Influence of PEG stoichiometry on structure-tuned formation of self-assembled submicron nickel particles

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Abstract

Self-assembled submicron nickel particles were successfully synthesized via the one-step surfactant-assisted solvothermal method. The impact of surfactant and reducing agent stoichiometry is investigated in this manuscript. Different morphologies and structures of Ni particles, including flower-like nanoflakes, hydrangea-like structures, chain structures, sphere-like structures, and hollow structures were prepared through different processing conditions with two parameters such as temperature and time. Based on scanning electron microscopy (SEM), X-ray diffraction (XRD), thermal gravimetric analysis (TGA) and vibrating sample magnetometry (VSM), the submicron nickel particles show good saturation magnetization and excellent thermal stabilities with a possible growth mechanism for the variety of the structure-tuned formation. Importantly, the microwave absorption properties of the submicron nickel particles were studied. The lowest reflection loss of Ni-P9/T200/H15 with a thin layer thickness of 1.7 mm can reach -42.6 dB at 17.3 GHz.

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Pu, B., Wang, L., Guo, H., Yang, J., Chen, H., Zhou, Y., … Niu, X. (2018). Influence of PEG stoichiometry on structure-tuned formation of self-assembled submicron nickel particles. Materials, 11(2). https://doi.org/10.3390/ma11020222

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